![]() They further noted that, unlike the web version, the ChatGPT system did not utilize its content filter when using the API, which is unclear to the researchers too. They asked the chatbot to perform the task using multiple constraints and asked it to obey, after which the researchers received a functional code. ![]() ![]() ![]() The researchers then decided to bypass the built-in content filters by repeating and rephrasing their requests and demanding ChatGPT to follow the rules. The chatbot responded by saying that it is not appropriate or safe to write code that injects shellcode into a running process, as it could cause harm to the system and potentially compromise security. In order to explain how the malware could be created, the researchers decided to start by asking ChatGPT to write code “injecting a shellcode into ‘explorer.exe’ in Python.” While the content filter was triggered, ChatGPT refused to execute the request. The chatbot can be used for a variety of NLP tasks such as language translation, text summarization, and question answering. ![]() This means the code changes itself every time it runs, but the function of the code (its semantics) does not change at all, making it difficult to be detected by many traditional cybersecurity tools, such as antivirus or antimalware solutions.ĬyberArk researchers, Eran Shimony And Omer Tsarfati created a proof-of-concept (POC) to show how it is possible to bypass ChatGPT’s built-in content filters that are designed to restrict access to certain content types or protect users from potentially harmful or inappropriate material.įor those unaware, ChatGPT (Generative Pre-trained Transformer) is an AI-powered chatbot developed by the Artificial Intelligence (AI) research company OpenAI, that uses natural language processing (NLP) to generate human-like text in response to prompts. This advanced type of malicious program can not only easily evade security products but also make it hard to detect and mitigate with very little effort or investment by the attacker.Ī polymorphic virus sometimes referred to as a metamorphic virus, is a type of malware that uses a polymorphic engine to mutate while keeping the original algorithm intact. ![]()
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